Department of Energy and Materials Engineering, Dongguk University, 30 Pildong-ro, 1-gil, Jung-gu, Seoul 04620, Republic of Korea.
Department of Advanced Battery Convergence Engineering, Dongguk University, 30 Pildong-ro, 1-gil, Jung-gu, Seoul 04620, Republic of Korea.
Int J Mol Sci. 2023 Jan 5;24(2):1067. doi: 10.3390/ijms24021067.
The increasing demand for portable and wearable electronics has promoted the development of safe and flexible yarn-based batteries with outstanding electrochemical properties. However, achieving superior energy storage performance with a high active material (AM) load and long cycle life with this device format remains a challenge. In this study, a stable and rechargeable high-performance aqueous Ni-Fe yarn battery was constructed via biscrolling to embed AMs within helical carbon nanotube (CNT) yarn corridors. Owing to the high load of charge storage nanoparticles (NPs; above 97 wt%) and the outer neat CNT layer, the buffered biscrolled Ni-Fe yarn battery demonstrates excellent linear capacity (0.053 mAh/cm) and cycling stability (60.1% retention after 300 charge/discharge cycles) in an aqueous electrolyte. Moreover, our flexible yarn battery exhibits maximum energy/power densities of 422 mWh/cm and 7535 mW/cm based on the total volume of the cathode and anode, respectively, which exceed those reported for many flexible Ni-Fe batteries. Thus, biscrolled Ni-Fe yarn batteries are promising candidates for next-generation conformal energy solutions.
对便携式和可穿戴电子产品的需求不断增加,推动了安全且灵活的基于纱线的电池的发展,这些电池具有出色的电化学性能。然而,对于这种器件结构,要实现具有高活性物质 (AM) 负载和长循环寿命的卓越储能性能仍然是一个挑战。在这项研究中,通过双卷工艺构建了一种稳定且可充电的高性能水性 Ni-Fe 纱线电池,将 AM 嵌入螺旋碳纳米管 (CNT) 纱线通道中。由于高负载的储能纳米颗粒 (NPs;超过 97wt%) 和外部纯净的 CNT 层,缓冲双卷 Ni-Fe 纱线电池在水性电解质中表现出出色的线性容量(0.053mAh/cm)和循环稳定性(300 次充放电循环后保留 60.1%)。此外,我们的柔性纱线电池在基于阴极和阳极总体积的情况下,分别表现出 422mWh/cm 和 7535mW/cm 的最大能量/功率密度,超过了许多柔性 Ni-Fe 电池的报道值。因此,双卷 Ni-Fe 纱线电池是下一代贴合式能源解决方案的有前途的候选者。